Abstract Climate change has increased the frequency and intensity of climate disasters, impacting over social, environmental and economic dimensions. In this context, this study aims to develop a multicriteria approach to prioritize risk areas, supporting decision-makers in disaster mitigation strategies. The approach integrates social, economic, infrastructure, and physical criteria, selected via expert focus groups and weighted using a mathematical matrix based on the Analytical Hierarchy Process (AHP). The criteria’s weights, combined with local indicators, results in a prioritization index. The approach was tested in risk areas of Porto Alegre, Brazil. The results of the study highlighted social criteria as the higher weights, with 43.7% of importance, followed by physical (25.5%) and infrastructure (19.4%) dimensions, and at least the economic dimension (11.4%). The findings underscore the prevalence of social criteria, highlighting the vulnerability of populations in areas with inadequate infrastructure. That has resulted in higher prioritization indexes in extreme social vulnerability areas in Porto Alegre, especially in areas impacted by hydrological processes, such as floods and flash floods, reflecting the critical reality of recent events, such as the historic 2024 flood. By identifying priority zones, this approach serves as tool for guiding sustainable, resilient urban planning and for optimizing public investment.
Urban flooding poses significant challenges to public safety, environmental sustainability, and socio-economic development, particularly in rapidly urbanizing cities in the Philippines, such as Calamba City. Effective prioritization of flood risk management strategies is therefore critical to support evidence-based urb...
Rusty Keith E. Placino, Aldous Glenri Baliton, Romalaine Chrisselle Bonoan et al.· E3S Web of Conferences· 0 citations
Urban resilience is a critical component of disaster risk governance, particularly in regions exposed to multiple natural, technological, and environmental hazards. This study proposes an integrated spatial decision-support framework that combines disaster risk, resilience capacity, and institutional responsibilities t...
Evaluating and improving community disaster risk reduction capacity (CDRRC) is a crucial concern in the theory and application of urban catastrophe management. Nonetheless, current evaluation frameworks frequently concentrate on a solitary discipline or a restricted array of metrics, while capacity-building initiatives...
Disaster risks are increasing in urban areas due to rapid urbanisation, environmental
degradation, climate variability, and inadequate disaster preparedness mechanisms. This study
examined the role of community-based planning in disaster risk management in the Federal
Capital Territory (FCT), Abuja, Nigeria, with im...
Ahmadu Makama· Research Journal of Humaniti...· 0 citations
Flooding is one of the most frequent and economically damaging natural disaster in Malaysia. Determining exposed elements vulnerable to flood is essential in flood risk management. This study aims to develop a micro-scale physical flood vulnerability assessment for buildings and roads in Sibu, Sarawak, Malaysia....
M. Ruslan, Muhammad Zulkarnain Abdul Rahman, M. F. Abdul Khanan et al.· International Journal of Dis...· 0 citations
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